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Analysis of weighing cells based on the principle of electromagnetic force compensation

机译:基于电磁力补偿原理的称重细胞分析

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摘要

An analytical model that considers the static behaviour of weighing cells based on the principle of electromagnetic force compensation (EMFC) is presented. With this model, adjustment strategies for the stiffness and tilt sensitivity of EMFC weighing cells are derived. These parameters are known as limiting factors for the achievable sensitivity and measurement uncertainty respectively. In order to obtain the analytical equations of the system, linear and rigid-body behaviour is assumed. The results obtained with the model are compared with results from multi-body simulations. It is shown that, for the considered model, an optimum design that eliminates the tilt sensitivity of the weighing cell while minimizing its stiffness exists.
机译:提出了一种基于电磁力补偿原理(EMFC)的称重细胞静态行为的分析模型。 通过该模型,推导出EMFC称重细胞刚度和倾斜敏感性的调整策略。 这些参数分别称为可实现的灵敏度和测量不确定性的限制因素。 为了获得系统的分析方程,假设线性和刚体行为。 将使用该模型获得的结果与来自多体模拟的结果进行比较。 结果表明,对于所考虑的模型,最佳设计,其消除了称重电池的倾斜灵敏度,同时最小化其刚度。

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